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dybincka [34]
2 years ago
3

How does the molecular structure of a material influence its physicial properties

Physics
1 answer:
evablogger [386]2 years ago
4 0

The molecular structure affects the molecular properties because the shape of of a molecule has a lot to do with the polarity of the compound.

<h3>What is molecular structure?</h3>

Molecular structure, is the three-dimensional structure or arrangement of atoms in a molecule.

The understanding the molecular structure of a compound can help determine the following;

  • polarity
  • reactivity
  • phase of matter
  • color
  • magnetism

Thus, the molecular structure affects the molecular properties because the shape of of a molecule has a lot to do with the polarity of the compound.

Learn more about molecular structure here: brainly.com/question/10599586

#SPJ1

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The speed of water at the tap of lower storey is more than that in the upper storey​
nadezda [96]

Answer:

Pressure of liquid in container is given by, P= height × density × acceleration of gravity.

At the lower storey, the height of the liquid from the open end is great, since height is directly proportional to pressure, the pressure exerted by liquid is maximum hence increase in velocity of flow.

Unlike the upper storey where the height of water is less hence the pressure exerted by the liquid is minimum which decreases the velocity / speed of liquid flow

4 0
3 years ago
Which statement is always true about objects which exert gravitational force on each other? (3 points)
kumpel [21]

Answer:

They have mass is always true.

8 0
3 years ago
HELP WILL MARK BRAINLIEST!!
kherson [118]

Answer:15

Explanation:

8 0
3 years ago
A wire with a linear mass density of 1.19 g/cm moves at a constant speed on a horizontal surface and the coefficient of kinetic
scZoUnD [109]

Answer:

The magnitude and direction of the smallest magnetic field that can accomplish this are 0.172 T and vertically to the east.

Explanation:

given information:

density of wire, m/l = 1.19 g/cm = 0.119 kg/m

coefficient of kinetic friction, μk = 0.250

current, I = 1.7 A

according to the Newton's first law

∑F = 0

F(magnetic) - F(friction) = 0

F(magnetic) = F(friction)

F(magnetic) = B i l sin θ

where

F (magnetic) = magnetic force

B = magnetic field (T)

i = current (A)

l = the length of wire (m)

θ = angle

and

F(friction) = μk N

where

F(friction) = kinetic force (N)

μk = coefficient of kinetic friction

N = Normal force (N)

so,

F(magnetic) = F(friction)

B i l sin θ = μk N

B = μk N/i l sin θ

now lets determine the normal force

N - mg = 0

N = mg

therefore

B = μk mg/i l sin θ

θ = 90° because the magnetic field is perpendicular to the wire (smallest magnetic field)

B = μk mg/i l sin 90

   = μk mg/i l

   = (μk g/i)  (m/l)

   = ((0.250) (9.8) / (1.7)) ((0.119)

    = 0.172 T

according to the right hand rule,  the direction of the magnetic field is vertically to the east. (magnetic force to the south and current to the westward)

8 0
3 years ago
A 10-cm-thick aluminum plate (α = 97.1 × 10−6 m2/s) is being heated in liquid with temperature of 550°C. The aluminum plate has
Zarrin [17]

Answer:

356°C.

Explanation:

(1). The first step to the solution to this particular Question/problem is to determine the Biot number, and after that to check the equivalent value of the Biot number with plate constants.

That is, Biot number = (length × ∞)÷ thermal conductivity. Which gives us the answer as ∞. Therefore, the equivalent value of the ∞ on the plates constant = 1.2732 for A and 1.5708 for λ.

(2). The next thing to do is to determine the fourier number.

fourier number = [α = 97.1 × 10−6 m2/s × 15 s] ÷ (.05m)^2 = 0.5826.

(3). The next thing is to determine the temperature at the center plane after 15 s of heating.

The temperature at the center plane after 15 s of heating = 500°C [ 25°C - 500°C ] [1.2732] × e^(-1.5708)^2 ( 0.5826).

The temperature at the center plane after 15 s of heating = 356°C.

8 0
3 years ago
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